Bio-Based Silica NS175 MS: High-Performance Rubber Reinforcing Agent

Discover the superior reinforcing capabilities of our bio-based silica, a sustainable and advanced material designed to enhance your rubber product performance. Trusted by manufacturers worldwide.

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Key Advantages of Our Bio-Based Silica

Superior Reinforcement

Our Bio-Based Silica NS175 MS acts as a high-performance reinforcing agent, significantly improving the tensile strength, tear resistance, and overall durability of your rubber products, making it essential for applications like tire manufacturing.

Environmental Responsibility

Manufactured from renewable resources such as rice husk and straw, this bio-based silica offers an eco-friendly alternative, supporting your sustainability goals and reducing environmental impact in your supply chain.

Excellent Dispersibility and Stability

The amorphous micro-pearl structure ensures excellent dispersion within rubber matrices, coupled with good chemical stability and high-temperature resistance, simplifying processing and ensuring product longevity.

Versatile Applications in the Rubber Industry

Automotive Tires

Enhance the performance of your tires by incorporating our silica as a reinforcing agent, improving wear resistance, reducing rolling resistance, and boosting wet grip for safer, more efficient vehicles.

Footwear Soles

Improve the durability, comfort, and wear resistance of shoe soles. Our bio-based silica provides excellent mechanical properties, making it a preferred choice for footwear manufacturers seeking quality and sustainability.

Industrial Rubber Products

From rubber sheets to hoses and wear-resistant parts, our silica powder delivers enhanced strength and longevity, meeting the demanding requirements of various industrial rubber applications. Buy now for reliable supply.

Custom Rubber Formulations

Leverage our expertise as a leading supplier to develop custom rubber compounds. Our bio-based silica NS175 MS provides a versatile solution for researchers and formulators seeking innovative materials.